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首页> 外文期刊>Optical and quantum electronics >Design Theory And Experiment Of Acousto-optical Tunable Filter By Use Of Flexural Waves Applied To Thin Optical Fiber
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Design Theory And Experiment Of Acousto-optical Tunable Filter By Use Of Flexural Waves Applied To Thin Optical Fiber

机译:弯曲光纤应用于薄光纤的声光可调滤波器的设计理论与实验

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摘要

Spectral response of acoustically induced microbending through thin optical fiber is discussed from mode-coupling of core and cladding modes. The thin fiber is analyzed in three-layered structure (core-cladding-air) to gain insights into acousto-optic modulation. We explained the dependence of core and/or cladding diameters on acoustic source parameters from numerical calculations. According to the calculations, we successfully fabricated all-optical tunable filter using this thin fiber that yields an efficient mode-coupling at flexural wave frequencies less than 1 MHz. To increase the acousto-optic effect, we used a specially designed thin optical fiber (80 μm of cladding diameter) in the section where flexural wave is produced, and spliced both ends of the thin fiber to the tapered 125 μm fibers. The frequency and voltage tuning of fabricated filter is also confirmed by changing the driven frequency and applied voltage of the PZT, respectively. This result suggests a possibility of fiber-optic device application as all-optical tunable filter at 1.55 μm.
机译:从纤芯和包层的模耦合讨论了通过细光纤的声致微弯曲的频谱响应。对三层结构(纤芯包层空气)进行了分析,以深入了解声光调制。我们通过数值计算解释了纤芯和/或包层直径对声源参数的依赖性。根据计算,我们使用这种细光纤成功地制造了全光可调滤波器,该光纤可在小于1 MHz的弯曲波频率下产生有效的模式耦合。为了提高声光效果,我们在产生弯曲波的部分使用了特殊设计的细光纤(包层直径为80μm),并将细光纤的两端拼接到锥形125μm光纤上。还可以通过分别改变PZT的驱动频率和施加电压来确认所制造滤波器的频率和电压调谐。该结果表明,将光纤设备用作1.55μm的全光可调滤波器的可能性。

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